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A tunable metamaterial absorber made by micro-gaps structures

机译:由微间隙结构制成的可调谐超材料吸收器

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This paper presents a research in tunable metamaterial (MM) absorber. We design an original split ring resonator (SRR) absorber, in first. Then through adding different group micro-gaps and increasing the number of micro-gaps, we investigate the change of different structures. We find the micro-gaps with a larger a, which is the position angle on the SRR, have a greater impact to the absorption characteristics, and the affect of the micro-gaps in low position can be ignored. It can be controlled by MEMS switches in theory. In addition, we also design a dual-band MM absorber combined by two micro-gaps structures, which has 96.04% and 96.68% absorptivity at 8.14GHz and 12.72GHz, respectively. The research is an exploration in tunable MM absorber direction and gives us an effective way to design the multi-band MM absorber.
机译:本文介绍了可调谐超材料(MM)吸收器的研究。首先,我们设计一个原始的裂环谐振器(SRR)吸收器。然后,通过添加不同的组微间隙并增加微间隙的数量,我们研究了不同结构的变化。我们发现具有较大a的微间隙(即SRR上的位置角)对吸收特性的影响更大,可以忽略低位置的微间隙的影响。理论上,它可以由MEMS开关控制。此外,我们还设计了由两个微间隙结构组合而成的双频带MM吸收器,在8.14GHz和12.72GHz处的吸收率分别为96.04%和96.68%。该研究是对可调谐MM吸收器方向的探索,为我们设计多频带MM吸收器提供了有效的方法。

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